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变性梯度凝胶电泳技术在海洋微生物分子生态学中的应用 被引量:4
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作者 王芳 杨季芳 谢和 《浙江万里学院学报》 2009年第2期72-77,共6页
变性梯度凝胶电泳技术是近年来研究微生物分子生态学的有利工具,因其具备可靠、简便、可重复等优势,被广泛应用于海洋微生物群落的多样性和动态性分析。文章综述了基于PCR的变性梯度凝胶电泳技术的基本原理、技术步骤、影响因素及其在... 变性梯度凝胶电泳技术是近年来研究微生物分子生态学的有利工具,因其具备可靠、简便、可重复等优势,被广泛应用于海洋微生物群落的多样性和动态性分析。文章综述了基于PCR的变性梯度凝胶电泳技术的基本原理、技术步骤、影响因素及其在海洋微生物群落多样性和动态性研究的应用现状。 展开更多
关键词 变性梯度凝胶电泳技术 海洋微生物分子生态学 多样性 动态性
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Proteorhodopsin——A new path for biological utilization of light energy in the sea 被引量:3
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作者 JIAO Nianzhi FENG Fuying WEI Bo 《Chinese Science Bulletin》 SCIE EI CAS 2006年第8期889-896,共8页
The breakthrough of environmental ge-nomics of marine microbes has revealed the exis-tence of eubacterial rhodopsin in the sea, named proteorhodopsin (PR), which can take light to pro-duce bio-energy for cell metaboli... The breakthrough of environmental ge-nomics of marine microbes has revealed the exis-tence of eubacterial rhodopsin in the sea, named proteorhodopsin (PR), which can take light to pro-duce bio-energy for cell metabolism. Gene and protein sequence analysis and laser flash-induced photolysis experiments have validated the function of PR as light-driven proton-pump. During the pumping process, light energy is transformed into chemical gradient potential across plasma inner-membrane, the potential energy is then used to synthesize ATP. The finding of PR actually brings to light a novel pathway of sunlight utilization existing in heterotro-phic eubacteria in contrast to the well-known chloro-phyll-dependent photosynthesis in the sea. Since the group of PR-bearing bacteria is one of the numeri-cally richest microorganisms on the Earth, accounting for 13% of the total in sea surface water, and with averaged cellular PR molecules of 2.5×104, PR- bearing bacteria are a key component not to be ig-nored in energy metabolism and carbon cycling in the sea. Based on the understanding of current literature and our own investigation on PR in the China seas which indicated a ubiquitous presence and high di-versity of PR in all the marine environments, we propose a conceptual model of energy flow and car-bon cycling driven by both pigment-dependent and -independent biological utilization of light in the ocean. 展开更多
关键词 光合作用 海洋微生物生态学 质子泵 碳循环模型 生物利用 光能
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